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PKZM0-2,5-C 229675 XTPRC2P5BC1NL EATON ELECTRIC Motor-protective circuit-breaker, 3p, Ir 1.6-2.5A, spring cl..
PKZM0-2,5-C
229675
XTPRC2P5BC1NL
EATON - MOELLER
1 Pcs.
Automation > Motor protection circuit-breaker
Circuit Breakers PKZ
Product condition, packaging, certifications and applicable manufacturer warranty terms are confirmed with the quotation.
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Eaton Moeller part PKZM0-2,5-C is a motor-protective circuit-breaker featuring spring clamp connections for rapid, vibration-resistant installation in industrial control cabinets. It offers reliable thermomagnetic tripping behavior to protect electric motors from overloads and phase loss.
Pricing, availability and lead time are confirmed per enquiry through an RFQ.
- Overload release current setting (EF002336): 1.6 A Adjustment range undelayed short-circuit release (EF007131): 39 A
- With thermal overload protection (EF006233): No
- Phase failure sensitive (EF007400): Yes
- Switch off technique (EF007007): Thermomagnetic
- Rated operating voltage (EF001435): 690 V
- Rated permanent current Iu (EF001389): 2.5 A
- Rated operation power at AC-3, 230 V (EF007025): 0.37 kW
- Rated operation power at AC-3, 400 V (EF001364): 0.75 kW
- Power loss (EF005387): 5.16 W
- Type of electrical connection of main circuit (EF006819): Spring clamp connection
- Type of control element (EF006976): Rotating button
- Device construction (EF008240): Built-in device fixed built-in technique
- With integrated auxiliary switch (EF001387): No
- With integrated under voltage release (EF001390): No
- Number of poles (EF001391): 3
More info
▲Delivery program
Observe manual MN03402003Z-DE/EN.
Can be snapped on to IEC/EN 60715 top-hat rail with 7.5 or 15 mm height.
Technical data
Damp heat, cyclic, to IEC 60068-2-30
2 x (0.75…2.5) mm2
2 x (0.75…2.5) mm2
208 V
240 V
480 V
600 V
240 V
Design verification as per IEC/EN 61439
Technical data ETIM 7.0
Approvals
Characteristics
2: Trip-indicating auxiliary contact
3: Shunt releases, undervoltage releases
1: Minimum level, 3-phase
2: Maximum level, 3-phase
3: Minimum marker, 2-phase
4: Highest marker, 2-phase
Let-through energy